There have been several studies on sulfur depletion in dense cores like TMC-1(Taurus Molecular Cloud 1),employing updated reaction networks for sulfur species to explain the missing sulfur in the gas within dense clouds.Most of these studies used a C/O ratio of 0.7 or lower.We present NSRT(NanShan 26m Radio Telescope)observations of TMC-1 alongside results from time-dependent chemical simulations using an updated chemical network.Our findings highlight the impact of the C/O ratio on the gas-phase evolution of C2S and C3S.The simulation results show that the C/O ratio is an important parameter,playing a fundamental role in determining the gas-phase abundances of sulfur species in dense cores.
目的为新型程序性死亡受体-1(PD-1)/程序性死亡配体-1(PD-L1)小分子抑制剂的研发提供参考。方法检索PubMed、Embase、Web of Science、ClinicalTrails.gov、中国知网、万方数据库2010年至2023年的PD-1/PD-L1小分子抑制剂相关文献,汇总并分析该类制剂的研发现状。结果与结论有成药潜力的PD-1/PD-L1小分子抑制剂共20种,包括CA-170(口服小分子抑制剂)、INCB086550(特异性PD-L1抑制剂)、DPPA-1(特异性抑制PD-1/PD-L1相互作用的多肽类拮抗剂)等,其中前两者已进入临床试验阶段。PD-1/PD-L1小分子抑制剂具有特异性抑制免疫检查点的药效作用特点,以及可口服、稳定性较好、膜通透性较高等优点,但其治疗效果仍需临床试验验证。
Polycystic ovary syndrome(PCOS)is a complex disorder.Genome-wide association studies(GWAS)have identified several genes associated with this condition,including DENND1A.DENND1A encodes a clathrin-binding protein that functions as a guanine nucleotide exchange factor involved in vesicular transport.However,the specific role of DENND1A in reproductive hormone abnormalities and follicle development disorders in PCOS remain poorly understood.In this study,we investigated DENND1A expression in ovarian granulosa cells(GCs)from PCOS patients and its correlation with hormones.Our results revealed an upregulation of DENND1A expression in GCs from PCOS cases,which was positively correlated with testosterone levels.To further explore the functional implications of DENND1A,we generated a transgenic mouse model overexpressing Dennd1a(TG mice).These TG mice exhibited subfertility,irregular estrous cycles,and increased testosterone production following PMSG stimulation.Additionally,the TG mice displayed diminished responsiveness to FSH,characterized by smaller ovary size,less well-developed follicles,and abnormal expressions of FSH-priming genes.Mechanistically,we found that Dennd1a overexpression disrupted the intracellular trafficking of follicle stimulating hormone receptor(FSHR),promoting its internalization and inhibiting recycling.These findings shed light on the reproductive role of DENND1A and uncover the underlying mechanisms,thereby contributing valuable insights into the pathogenesis of PCOS and providing potential avenues for drug design in PCOS treatment.